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1)  organic antimony source
有机锑源
2)  organoantimony
有机锑
1.
The synergistic effects of organoantimony and other additives on the properties of rigid Poly(vinyl chloride)(PVC) were studied by Haake polydrive.
采用HAAKE流变仪研究了在添加自制有机锑热稳定剂及各种助剂后的硬质聚氯乙烯(PVC)的热稳定性能,同时探讨了它们的防初期着色性能。
2.
The Characterization and application scope of organoantimony (mainly mercaptan antimony) heat stabilizers were introduced in comparative detail; the effects when it used with other heat stabilizers and the conventional formulation when it used as heat stabilizer for polyvinyl chloride were also introduced.
较详细地介绍了有机锑(主要是硫醇锑)热稳定剂的表征及应用范围,同时还介绍了它与其他热稳定剂并用时的效果及用作PVC热稳定剂时的常用配方,建议今后在PVC管材中使用。
3)  organic antimony
有机锑
1.
Relative organic antimony was prepared by antimony trioxide or antimony trichlorides and benzoic acid(thioglycollic acid, thioglycollic acid isooctylester)as materials.
以三氧化二锑或三氯化锑分别和苯甲酸、巯基乙酸、巯基乙酸异辛酯等为原料,合成相应的有机锑化合物,研究了其光稳定性以及各合成产物对PVC的热稳定作用。
2.
Some new heat stabilizers were exploited such as rare earth, organic antimony, autunite/zinc compounds, hydrotalcite and so on.
随着环保意识的逐渐加强 ,传统的PVC热稳定剂如铅盐类稳定剂已受到了一定的限制 ,相应地开发出了一系列新型的PVC热稳定剂 ,包括稀土类、有机锑类、钙锌 (Ca/Zn)复合类和水滑石类热稳定剂。
3.
In order to develop high efficient organic antimony stabilizer for PVC, Antimony tri(n-dodecanethiol) was prepared by using dodecyl alcohol and antimony trioxide as materials, the yield is 87.
为开发有机锑类高效PVC热稳定剂,以三氧化二锑与自制的十二烷基硫酸为原料,合成了三(十二烷基硫醇)锑,产率可达87。
4)  organic antimony compound
有机锑剂
5)  antimony organic sulfur containing compound
含硫有机锑
1.
Synthesis and application performance of antimony organic sulfur containing compound that is a kind of non toxic liquid are studied.
对无毒液体含硫有机锑的合成及应用性能进行了研究 ,试验表明含硫有机锑能够提高PVC的热稳定性和力学性能 ,可以应用于生产。
6)  Sb organic compound
锑有机化合物
1.
Study on MS fragmentation and its thermal stability of Sb organic compound;
锑有机化合物的质谱及其热稳定性研究
补充资料:有机锑源
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性质:指用于金属有机化合物气相沉积(MOCVD),具有很高挥发性、高纯度的有机锑化合物。主要指三甲基锑[(CH3)3Sb]三乙基锑[(C2H5)3Sb]。易挥发、自燃,在500~700℃容易分解,在室温下贮存十分稳定。利用格利雅反应制备。提纯方法主要采用精密精馏和减压精馏及配位体置换(ligand displacement)新技术。主要用于生长InSb作为长波材料基底。它还广泛用作硅器件和III~V半导体器件的掺杂源。

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